Fermionic Operator Mixing in Holographic p-wave Superfluids
arXiv:1003.1134 · doi:10.1007/JHEP05(2010)053
Abstract
We use gauge-gravity duality to compute spectral functions of fermionic operators in a strongly-coupled defect field theory in p-wave superfluid states. The field theory is (3+1)-dimensional N=4 supersymmetric SU(Nc) Yang-Mills theory, in the 't Hooft limit and with large coupling, coupled to two massless flavors of (2+1)-dimensional N=4 supersymmetric matter. We show that a sufficiently large chemical potential for a U(1) subgroup of the global SU(2) isospin symmetry triggers a phase transition to a p-wave superfluid state, and in that state we compute spectral functions for the fermionic superpartners of mesons valued in the adjoint of SU(2) isospin. In the spectral functions we see the breaking of rotational symmetry and the emergence of a Fermi surface comprised of isolated points as we cool the system through the superfluid phase transition. The dual gravitational description is two coincident probe D5-branes in AdS5 x S5 with non-trivial worldvolume SU(2) gauge fields. We extract spectral functions from solutions of the linearized equations of motion for the D5-branes' worldvolume fermions, which couple to one another through the worldvolume gauge field. We develop an efficient method to compute retarded Green's functions from a system of coupled bulk fermions. We also perform the holographic renormalization of free bulk fermions in any asymptotically Euclidean AdS space.
68 pages, 25 eps files in 9 figures; v2 minor corrections, added two references, version published in JHEP
References in corpus (36)
- Building an AdS/CFT superconductor
- Minkowski-space correlators in AdS/CFT correspondence: recipe and applications
- Lectures on Holographic Superfluidity and Superconductivity
- A Non-Fermi Liquid from a Charged Black Hole; A Critical Fermi Ball
- Holographic Wilson Loops
- Holographic superconductivity in M-Theory
- Superconductors from Superstrings
- Real-time response in AdS/CFT with application to spinors
- Colorful horizons with charge in anti-de Sitter space
- Superconductivity from gauge/gravity duality with flavor
- Hydrodynamics of Holographic Superconductors
- AdS/CFT with Flavour in Electric and Magnetic Kalb-Ramond Fields
- Flavoured Large N Gauge Theory in an External Magnetic Field
- The gravity dual to a quantum critical point with spontaneous symmetry breaking
- Finite Temperature Large N Gauge Theory with Quarks in an External Magnetic Field
- Zero Sound from Holography
- Flavor Superconductivity from Gauge/Gravity Duality
- Transport Properties of Holographic Defects
- Rho meson condensation at finite isospin chemical potential in a holographic model for QCD
- Holographic Description of the Phase Diagram of a Chiral Symmetry Breaking Gauge Theory
- Holographic mesons in various dimensions
- Bubbling Defect CFT's
- Spectroscopy of fermionic operators in AdS/CFT
- Quantum criticality and black holes
- Fermion correlators in non-abelian holographic superconductors
- Holographic Gauge Theories in Background Fields and Surface Operators
- Localized modes at a D-brane--O-plane intersection and heterotic Alice strings
- Meson supercurrents and the Meissner effect in the Sakai-Sugimoto model
- Toward a Holographic Model of Superconducting Fermions
- Exploring colourful holographic superconductors
- Chemical Potential in the Gravity Dual of a 2+1 Dimensional System
- Universality of Holographic Phase Transitions and Holographic Quantum Liquids
- Massive Quantum Liquids from Holographic Angel's Trumpets
- Fermionic Schwinger-Keldysh Propagators from AdS/CFT
- Comments on Non-Fermi Liquids in the Presence of a Condensate
- Holographic flavor in the gauge/gravity duality
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- Holographic Fermi surfaces and bulk dipole couplings
- Characteristic length of a Holographic Superconductor with -wave gap
- Low temperature properties of holographic condensates
- Three Roads to Probe-Brane Superconductivity